Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica
.
Introducción  La fisioterapia como área de estudio del movimiento corporal humano, se ha enfatizado en ofrecer herramientas de recuperación a pacientes con diversos tipos de patología a nivel osteomuscular, cardiovascular y neuromuscular. Los procesos de evaluación en fisioterapia son importantes para la identificación de alteraciones estructurales y funcionales en el movimiento corporal humano, en la actualidad existen diversos instrumentos de evaluación con altos niveles de confiabilidad que permiten identificar alteraciones funcionales en los pacientes. Objetivo realizar una revisión de la literatura sobre pruebas clínicas utilizadas para la evaluación del movimiento corporal humano en población adulta y pediátrica en la prá... Ver más
2011-7191
2463-2236
12
2019-03-14
13
22
info:eu-repo/semantics/openAccess
http://purl.org/coar/access_right/c_abf2
id |
metarevistapublica_ibero_movimientocientifico_87_article_1143 |
---|---|
record_format |
ojs |
spelling |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica Instruments for Physiotherapy Evaluation in the Adult and Pediatric Population Used in Clinical Practice Introducción  La fisioterapia como área de estudio del movimiento corporal humano, se ha enfatizado en ofrecer herramientas de recuperación a pacientes con diversos tipos de patología a nivel osteomuscular, cardiovascular y neuromuscular. Los procesos de evaluación en fisioterapia son importantes para la identificación de alteraciones estructurales y funcionales en el movimiento corporal humano, en la actualidad existen diversos instrumentos de evaluación con altos niveles de confiabilidad que permiten identificar alteraciones funcionales en los pacientes. Objetivo realizar una revisión de la literatura sobre pruebas clínicas utilizadas para la evaluación del movimiento corporal humano en población adulta y pediátrica en la práctica clínica categorizada por las categorías de la APTA. Método revisión sistemática de la literatura donde se tuvieron en cuenta estudios contemplados del año 2000 al 2016, literatura que contemplara los siguientes términos DeCS: Evaluation, Physical Therapy, pediatrics, adult. Resultados se pudo identificar que entre población adulta y pediátrica existen diferencias en las escalas de medición utilizadas para la evaluación del movimiento corporal humano, las escalas pueden ser categorizadas a través de las categorías de la APTA como características antropométricas, capacidad aeróbica y resistencia, integridad integumentaria, dolor, conciencia atención y cognición, integridad refleja, función motora, desarrollo neuromotor e integridad sensorial, rango de movimiento y flexibilidad, desempeño muscular, marcha y locomoción, balance, autocuidado y manejo en el hogar. Conclusión se pudieron identificar pruebas clínicas con altos niveles de validez y confiabilidad que permiten determinar alteraciones del movimiento corporal humano en adultos y niños, estas pruebas pueden ser categorizadas a través de las categorías de la APTA. Introduction Physiotherapy as an area of study of human body movement, has been emphasized in offering  recovery and rehabilitation tools to patients with various types of pathologies at the musculoskeletal,  cardiovascular, neuromuscular and cognitive levels. The physiotherapeutic evaluation processes are essential for the identification of alterations in human body movement. Currently, there are several assessment instruments with high levels of reliability that allow identifying functional alterations in patients in order to improve rehabilitation processes.Objetive A review of the literature on clinical tests used for the evaluation of human body movement in the adult and pediatric population in clinical practice classified according to the APTA categories. Method Literature review where the studies considered from 2000 to 2018 were taken into account, literature that includes the following DeCS terms: evaluation, physical therapy, pediatrics, adults, validity, and reliability. Results can be  identified in the adult and pediatric population there are differences in the scales of performances that are used for the evaluation of human body movement, the scales that are classified in the APTA categories as anthropometric characteristics, aerobic capacity and resistance, integrity integumentary, pain, muscle awareness, motor function, neuromotor development and sensory integrity, range of motion, muscle performance, walking and locomotion, balance, self-care and home management. Conclusion We will identify clinical tests with high levels of validity and reliability that will allow alterations of human body movement in adults and children. Alfonso Mantilla, Jose Ivan 12 2 Artículo de revista Journal article 2019-03-14T00:00:00Z 2019-03-14T00:00:00Z 2019-03-14 application/pdf Bogotá: Corporación Universitaria Iberoamericana Movimiento científico 2011-7191 2463-2236 https://revmovimientocientifico.ibero.edu.co/article/view/mct.12202 10.33881/2011-7191.mct.12202 https://doi.org/10.33881/2011-7191.mct.12202 spa https://creativecommons.org/licenses/by-nc-sa/4.0/ 13 22 Adelmanesh, F., Jalali, A., Attarian, H., Farahani, B., Ketabchi, S. M., Arvantaj, A., & Raissi, G. R. (2012). Reliability, validity, and sensitivity measures of expanded and revised version of the short-form McGill Pain Questionnaire (SF-MPQ-2) in Iranian patients with neuropathic and non-neuropathic pain. Pain Med, 13(12), 1631-1636. doi:10.1111/j.1526-4637.2012.01517.x Agrawal, Y., Carey, J. P., Hoffman, H. J., Sklare, D. A., & Schubert, M. C. (2011). The modified Romberg Balance Test: normative data in U.S. adults. Otol Neurotol, 32(8), 1309-1311. doi:10.1097/MAO.0b013e31822e5bee Alhusaini, A. A., Dean, C. M., Crosbie, J., Shepherd, R. B., & Lewis, J. (2010). Evaluation of spasticity in children with cerebral palsy using Ashworth and Tardieu Scales compared with laboratory measures. J Child Neurol, 25(10), 1242-1247. doi:10.1177/0883073810362266 Allington, N. J., Leroy, N., & Doneux, C. (2002). Ankle joint range of motion measurements in spastic cerebral palsy children: intraobserver and interobserver reliability and reproducibility of goniometry and visual estimation. J Pediatr Orthop B, 11(3), 236-239. Almeida, K. M., Dutra, M. V., Mello, R. R., Reis, A. B., & Martins, P. S. (2008). Concurrent validity and reliability of the Alberta Infant Motor Scale in premature infants. J Pediatr (Rio J), 84(5), 442-448. doi:doi:10.2223/JPED.1836 Alotaibi, M., Long, T., Kennedy, E., & Bavishi, S. (2014). The efficacy of GMFM-88 and GMFM-66 to detect changes in gross motor function in children with cerebral palsy (CP): a literature review. Disabil Rehabil, 36(8), 617-627. doi:10.3109/09638288.2013.805820 Amatachaya, S., Naewla, S., Srisim, K., Arrayawichanon, P., & Siritaratiwat, W. (2014). Concurrent validity of the 10-meter walk test as compared with the 6-minute walk test in patients with spinal cord injury at various levels of ability. Spinal Cord, 52(4), 333-336. doi:10.1038/sc.2013.171 Anthony, D., Willock, J., & Baharestani, M. (2010). A comparison of Braden Q, Garvin and Glamorgan risk assessment scales in paediatrics. J Tissue Viability, 19(3), 98-105. doi:10.1016/j.jtv.2010.03.001 Atiaja Bonifas, A. R. (2013). Implementación de un sistema de evaluación fisioterapéutica en el tratamiento de rehabilitación física de pacientes con patologías traumatológicas que acuden al área de rehabilitación física del club de leones de la ciudad de ambato en el período marzo–agosto 2012. Bartlett, D., & Birmingham, T. (2003). Validity and reliability of a pediatric reach test. Pediatr Phys Ther, 15(2), 84-92. doi:10.1097/01.pep.0000067885.63909.5c Beers, S. R., Wisniewski, S. R., Garcia-Filion, P., Tian, Y., Hahner, T., Berger, R. P., . . . Adelson, P. D. (2012). Validity of a pediatric version of the Glasgow Outcome Scale-Extended. J Neurotrauma, 29(6), 1126-1139. doi:10.1089/neu.2011.2272 Bellet, R. N., Adams, L., & Morris, N. R. (2012). The 6-minute walk test in outpatient cardiac rehabilitation: validity, reliability and responsiveness--a systematic review. Physiotherapy, 98(4), 277-286. doi:10.1016/j.physio.2011.11.003 Benka Wallen, M., Sorjonen, K., Lofgren, N., & Franzen, E. (2016). Structural Validity of the Mini-Balance Evaluation Systems Test (Mini-BESTest) in People With Mild to Moderate Parkinson Disease. Phys Ther, 96(11), 1799-1806. doi:10.2522/ptj.20150334 Bensoussan, A., Chang, S. W., Menzies, R. G., & Talley, N. J. (2001). Application of the general health status questionnaire SF36 to patients with gastrointestinal dysfunction: initial validation and validation as a measure of change. Aust N Z J Public Health, 25(1), 71-77. Berg, M. M., Dolva, A. S., Kleiven, J., & Krumlinde-Sundholm, L. (2016). Normative Scores for the Pediatric Evaluation of Disability Inventory in Norway. Phys Occup Ther Pediatr, 36(2), 131-143. doi:10.3109/01942638.2015.1050149 Bezerra da Silva Junior, G., De Francesco Daher, E., Fontenele Menezes, A. P., Torres Araújo, M. N., Goretti Frota Ribeiro, M., & Carneiro Câmara, L. M. (2013). Aplicación del examen objetivo clínico estructurado en la evaluación de la Semiología cardiopulmonar. Educación Médica Superior, 27(3), 247-254. Birbeck, G. L., Wiysonge, C. S., Mills, E. J., Frenk, J. J., Zhou, X. N., & Jha, P. (2013). Global health: the importance of evidence-based medicine. BMC Med, 11, 223. doi:10.1186/1741-7015-11-226 Blonna, D., Zarkadas, P. C., Fitzsimmons, J. S., & O'Driscoll, S. W. (2012a). Accuracy and inter-observer reliability of visual estimation compared to clinical goniometry of the elbow. Knee Surg Sports Traumatol Arthrosc, 20(7), 1378-1385. doi:10.1007/s00167-011-1720-9 Blonna, D., Zarkadas, P. C., Fitzsimmons, J. S., & O'Driscoll, S. W. (2012b). Validation of a photography-based goniometry method for measuring joint range of motion. J Shoulder Elbow Surg, 21(1), 29-35. doi:10.1016/j.jse.2011.06.018 Bradley Eilertsen, M. E., Jozefiak, T., Rannestad, T., Indredavik, M. S., & Vik, T. (2012). Quality of life in children and adolescents surviving cancer. Eur J Oncol Nurs, 16(2), 185-193. doi:10.1016/j.ejon.2011.08.001 Braga-Neto, P., Godeiro-Junior, C., Dutra, L. A., Pedroso, J. L., & Barsottini, O. G. (2010). Translation and validation into Brazilian version of the Scale of the Assessment and Rating of Ataxia (SARA). Arq Neuropsiquiatr, 68(2), 228-230. Cacau, L. A., Santana-Filho, V. J., Maynard, L. G., Gomes, M. N., Fernandes, M., & Carvalho, V. O. (2016). Reference Values for the Six-Minute Walk Test in Healthy Children and Adolescents: a Systematic Review. Braz J Cardiovasc Surg, 31(5), 381-388. doi:10.5935/1678-9741.20160081 Canbek, J., Fulk, G., Nof, L., & Echternach, J. (2013). Test-retest reliability and construct validity of the tinetti performance-oriented mobility assessment in people with stroke. J Neurol Phys Ther, 37(1), 14-19. doi:10.1097/NPT.0b013e318283ffcc Charpak, N., de la Hoz, A. M., Villegas, J., & Gil, F. (2016). Discriminant ability of the Infant Neurological International Battery (INFANIB) as a screening tool for the neurological follow-up of high-risk infants in Colombia. Acta Paediatr, 105(5), e195-199. doi:10.1111/apa.13377 Colaris, J., van der Linden, M., Selles, R., Coene, N., Allema, J. H., & Verhaar, J. (2010). Pronation and supination after forearm fractures in children: Reliability of visual estimation and conventional goniometry measurement. Injury, 41(6), 643-646. doi:10.1016/j.injury.2010.02.007 Compagnone, E., Maniglio, J., Camposeo, S., Vespino, T., Losito, L., De Rinaldis, M., . . . Trabacca, A. (2014). Functional classifications for cerebral palsy: correlations between the gross motor function classification system (GMFCS), the manual ability classification system (MACS) and the communication function classification system (CFCS). Res Dev Disabil, 35(11), 2651-2657. doi:10.1016/j.ridd.2014.07.005 Condron, J. E., & Hill, K. D. (2002). Reliability and validity of a dual-task force platform assessment of balance performance: effect of age, balance impairment, and cognitive task. J Am Geriatr Soc, 50(1), 157-162. Curley, M. A., Razmus, I. S., Roberts, K. E., & Wypij, D. (2003). Predicting pressure ulcer risk in pediatric patients: the Braden Q Scale. Nurs Res, 52(1), 22-33. Darr, N., Franjoine, M. R., Campbell, S. K., & Smith, E. (2015). Psychometric Properties of the Pediatric Balance Scale Using Rasch Analysis. Pediatr Phys Ther, 27(4), 337-348. doi:10.1097/pep.0000000000000178 de Albuquerque, P. L., Lemos, A., Guerra, M. Q., & Eickmann, S. H. (2015). Accuracy of the Alberta Infant Motor Scale (AIMS) to detect developmental delay of gross motor skills in preterm infants: a systematic review. Dev Neurorehabil, 18(1), 15-21. doi:10.3109/17518423.2014.955213 de Kraker, M., Selles, R. W., Molenaar, T. M., Schreuders, T. A., Hovius, S. E., & Stam, H. J. (2009). Palmar abduction measurements: reliability and introduction of normative data in healthy children. J Hand Surg Am, 34(9), 1704-1708. doi:10.1016/j.jhsa.2009.06.011 de Lima, E. L., de Brito, M. J., de Souza, D. M., Salome, G. M., & Ferreira, L. M. (2016). Cross-cultural adaptation and validation of the neonatal/infant Braden Q risk assessment scale. J Tissue Viability, 25(1), 57-65. doi:10.1016/j.jtv.2015.12.004 Defrasne Ait-Said, E., Groslambert, A., & Courty, D. (2007). Validation of a pictorial rating scale for grip strength evaluation in 3- to 6-year-old children. Neurosci Lett, 420(2), 150-154. doi:10.1016/j.neulet.2007.04.066 Demerath, E. W., & Fields, D. A. (2014). Body composition assessment in the infant. Am J Hum Biol, 26(3), 291-304. doi:10.1002/ajhb.22500 Deschamps, K., Staes, F., Desmet, D., Roosen, P., Matricali, G. A., Keijsers, N., . . . Bruyninckx, H. (2015). A color-code based method for the interpretation of plantar pressure measurements in clinical gait analysis. Gait Posture, 41(3), 852-856. doi:10.1016/j.gaitpost.2014.12.013 Deschamps, K., Staes, F., Desmet, D., Roosen, P., Matricali, G. A., Keijsers, N., . . . Bruyninckx, H. (2016). A Novel Method of Quantifying Gait Deviations Using Plantar Pressure Patterns. J Am Podiatr Med Assoc, 106(4), 299-304. doi:10.7547/14-140 Dumas, H. M., Fragala-Pinkham, M. A., Rosen, E. L., Lombard, K. A., & Farrell, C. (2015). Pediatric Evaluation of Disability Inventory Computer Adaptive Test (PEDI-CAT) and Alberta Infant Motor Scale (AIMS): Validity and Responsiveness. Phys Ther, 95(11), 1559-1568. doi:10.2522/ptj.20140339 Dutton, M. (2012). McGraw-Hills NPTE National Physical Therapy Exam, Second Edition: McGraw-Hill Education. Eisenmann, J. C., Heelan, K. A., & Welk, G. J. (2004). Assessing body composition among 3- to 8-year-old children: anthropometry, BIA, and DXA. Obes Res, 12(10), 1633-1640. doi:10.1038/oby.2004.203 Eliasson, A. C., Krumlinde-Sundholm, L., Rosblad, B., Beckung, E., Arner, M., Ohrvall, A. M., & Rosenbaum, P. (2006). The Manual Ability Classification System (MACS) for children with cerebral palsy: scale development and evidence of validity and reliability. Dev Med Child Neurol, 48(7), 549-554. doi:10.1017/s0012162206001162 Ely, E. W., Truman, B., Shintani, A., Thomason, J. W., Wheeler, A. P., Gordon, S., . . . Bernard, G. R. (2003). Monitoring sedation status over time in ICU patients: reliability and validity of the Richmond Agitation-Sedation Scale (RASS). Jama, 289(22), 2983-2991. doi:10.1001/jama.289.22.2983 Erceg, D. N., Dieli-Conwright, C. M., Rossuello, A. E., Jensky, N. E., Sun, S., & Schroeder, E. T. (2010). The Stayhealthy bioelectrical impedance analyzer predicts body fat in children and adults. Nutr Res, 30(5), 297-304. doi:10.1016/j.nutres.2010.04.009 Garra, G., Singer, A. J., Domingo, A., & Thode, H. C., Jr. (2013). The Wong-Baker pain FACES scale measures pain, not fear. Pediatr Emerg Care, 29(1), 17-20. doi:10.1097/PEC.0b013e31827b2299 Garra, G., Singer, A. J., Taira, B. R., Chohan, J., Cardoz, H., Chisena, E., & Thode, H. C., Jr. (2010). Validation of the Wong-Baker FACES Pain Rating Scale in pediatric emergency department patients. Acad Emerg Med, 17(1), 50-54. doi:10.1111/j.1553-2712.2009.00620.x Gautschi, O. P., Smoll, N. R., Corniola, M. V., Joswig, H., Chau, I., Hildebrandt, G., . . . Stienen, M. N. (2016). Validity and Reliability of a Measurement of Objective Functional Impairment in Lumbar Degenerative Disc Disease: The Timed Up and Go (TUG) Test. Neurosurgery, 79(2), 270-278. doi:10.1227/neu.0000000000001195 Graham, H. K., Harvey, A., Rodda, J., Nattrass, G. R., & Pirpiris, M. (2004). The Functional Mobility Scale (FMS). J Pediatr Orthop, 24(5), 514-520. Grilli, L., Feldman, D. E., Majnemer, A., Couture, M., Azoulay, L., & Swaine, B. (2006). Associations between a functional independence measure (WeeFIM) and the pediatric quality of life inventory (PedsQL4.0) in young children with physical disabilities. Qual Life Res, 15(6), 1023-1031. doi:10.1007/s11136-006-0041-9 Groth, G. N., VanDeven, K. M., Phillips, E. C., & Ehretsman, R. L. (2001). Goniometry of the proximal and distal interphalangeal joints, Part II: placement prefereces, interrater reliability, and concurrent validity. J Hand Ther, 14(1), 23-29. Halek, M., & Mayer, H. (2002). [Predictive validity of the original and expanded Norton Scale in geriatric nursing]. Pflege, 15(6), 309-317. doi:10.1024/1012-5302.15.6.309 Harris, S. R., Backman, C. L., & Mayson, T. A. (2010). Comparative predictive validity of the Harris Infant Neuromotor Test and the Alberta Infant Motor Scale. Dev Med Child Neurol, 52(5), 462-467. doi:10.1111/j.1469-8749.2009.03518.x Haugh, A. B., Pandyan, A. D., & Johnson, G. R. (2006). A systematic review of the Tardieu Scale for the measurement of spasticity. Disabil Rehabil, 28(15), 899-907. doi:10.1080/09638280500404305 Hawker, G. A., Mian, S., Kendzerska, T., & French, M. (2011). Measures of adult pain: Visual Analog Scale for Pain (VAS Pain), Numeric Rating Scale for Pain (NRS Pain), McGill Pain Questionnaire (MPQ), Short-Form McGill Pain Questionnaire (SF-MPQ), Chronic Pain Grade Scale (CPGS), Short Form-36 Bodily Pain Scale (SF-36 BPS), and Measure of Intermittent and Constant Osteoarthritis Pain (ICOAP). Arthritis Care Res (Hoboken), 63 Suppl 11, S240-252. doi:10.1002/acr.20543 Honaker, J. A., Boismier, T. E., Shepard, N. P., & Shepard, N. T. (2009). Fukuda stepping test: sensitivity and specificity. J Am Acad Audiol, 20(5), 311-314; quiz 335. Hong, S. K., Park, J. H., Kwon, S. Y., Kim, J. S., & Koo, J. W. (2015). Clinical efficacy of the Romberg test using a foam pad to identify balance problems: a comparative study with the sensory organization test. Eur Arch Otorhinolaryngol, 272(10), 2741-2747. doi:10.1007/s00405-014-3273-2 Hormiga, C., Camargo, D., & Orozco, L. (2008). Reproducibilidad y validez convergente de la Escala Abreviada del Desarrollo y una traducción al español del instrumento Neurosensory Motor Development Assessment. Biomédica, 28(3), 327-346. Hwang, R., Morris, N. R., Mandrusiak, A., Mudge, A., Suna, J., Adsett, J., & Russell, T. (2016). Timed Up and Go Test: A Reliable and Valid Test in Patients With Chronic Heart Failure. J Card Fail, 22(8), 646-650. doi:10.1016/j.cardfail.2015.09.018 Isella, V., Mapelli, C., Morielli, N., De Gaspari, D., Siri, C., Pezzoli, G., . . . Appollonio, I. M. (2013). Validity and metric of MiniMental Parkinson and MiniMental State Examination in Parkinson's disease. Neurol Sci, 34(10), 1751-1758. doi:10.1007/s10072-013-1328-6 Jain, M., Smith, M., Cintas, H., Koziol, D., Wesley, R., Harris-Love, M., . . . Hicks, J. (2006). Intra-rater and inter-rater reliability of the 10-point Manual Muscle Test (MMT) of strength in children with juvenile idiopathic inflammatory myopathies (JIIM). Phys Occup Ther Pediatr, 26(3), 5-17. Kallman, U., & Lindgren, M. (2014). Predictive validity of 4 risk assessment scales for prediction of pressure ulcer development in a hospital setting. Adv Skin Wound Care, 27(2), 70-76. doi:10.1097/01.asw.0000439059.72199.41 Kamath, S., & Guyatt, G. (2016). Importance of evidence-based medicine on research and practice. In Indian J Anaesth (Vol. 60, pp. 622-625). India. Kanburoglu, M. K., Ozdemir, F. M., Ozkan, S., & Tunaoglu, F. S. (2014). Reference values of the 6-minute walk test in healthy Turkish children and adolescents between 11 and 18 years of age. Respir Care, 59(9), 1369-1375. doi:10.4187/respcare.02891 Kato, T., Kato, Z., Kuratsubo, I., Ota, T., Orii, T., Kondo, N., & Suzuki, Y. (2007). Evaluation of ADL in patients with Hunter disease using FIM score. Brain Dev, 29(5), 298-305. doi:10.1016/j.braindev.2006.08.015 Kerson, A. G., DeMaria, R., Mauer, E., Joyce, C., Gerber, L. M., Greenwald, B. M., . . . Traube, C. (2016). Validity of the Richmond Agitation-Sedation Scale (RASS) in critically ill children. J Intensive Care, 4, 65. doi:10.1186/s40560-016-0189-5 Kim, B. R., Lee, J. Y., Kim, M. J., Jung, H., & Lee, J. (2014). Korean version of the scale for the assessment and rating of ataxia in ataxic stroke patients. Ann Rehabil Med, 38(6), 742-751. doi:10.5535/arm.2014.38.6.742 Ko, J. (2014). Sensitivity to functional improvements of GMFM-88, GMFM-66, and PEDI mobility scores in young children with cerebral palsy. Percept Mot Skills, 119(1), 305-319. doi:10.2466/03.25.PMS.119c14z1 Ko, J., & Kim, M. (2012). Inter-rater Reliability of the K-GMFM-88 and the GMPM for Children with Cerebral Palsy. Ann Rehabil Med, 36(2), 233-239. doi:10.5535/arm.2012.36.2.233 Kulkarni, B., Mamidi, R. S., Balakrishna, N., & Radhakrishna, K. V. (2014). Body composition assessment in infancy and early childhood: comparison of anthropometry with dual-energy X-ray absorptiometry in low-income group children from India. Eur J Clin Nutr, 68(6), 658-663. doi:10.1038/ejcn.2014.37 Kusztal, M., Nowak, K., Magott-Procelewska, M., Weyde, W., & Penar, J. (2003). [Evaluation of health-related quality of life in dialysis patients. Personal experience using questionnaire SF-36]. Pol Merkur Lekarski, 14(80), 113-117. Lammers, A. E., Hislop, A. A., Flynn, Y., & Haworth, S. G. (2008). The 6-minute walk test: normal values for children of 4-11 years of age. Arch Dis Child, 93(6), 464-468. doi:10.1136/adc.2007.123653 Lee, J. W., Chung, E., & Lee, B. H. (2015). A comparison of functioning, activity, and participation in school-aged children with cerebral palsy using the manual ability classification system. J Phys Ther Sci, 27(1), 243-246. doi:10.1589/jpts.27.243 Lee-Valkov, P. M., Aaron, D. H., Eladoumikdachi, F., Thornby, J., & Netscher, D. T. (2003). Measuring normal hand dexterity values in normal 3-, 4-, and 5-year-old children and their relationship with grip and pinch strength. J Hand Ther, 16(1), 22-28. Lesmes, J. D. (2007). Evaluación clínico-funcional del movimiento corporal humano: Ed. Médica Panamericana. Levin, H. S., Boake, C., Song, J., McCauley, S., Contant, C., Diaz-Marchan, P., . . . Kotrla, K. J. (2001). Validity and sensitivity to change of the extended Glasgow Outcome Scale in mild to moderate traumatic brain injury. J Neurotrauma, 18(6), 575-584. doi:10.1089/089771501750291819 Liao, W., Wen, E. Y., Li, C., Chang, Q., Lv, K. L., Yang, W., . . . Zhao, C. M. (2012). Predicting neurodevelopmental outcomes for at-risk infants: reliability and predictive validity using a Chinese version of the INFANIB at 3, 7 and 10 months. BMC Pediatr, 12, 72. doi:10.1186/1471-2431-12-72 Lim, H. (2015). Correlation between the selective control assessment of lower extremity and pediatric balance scale scores in children with spastic cerebral palsy. J Phys Ther Sci, 27(12), 3645-3649. doi:10.1589/jpts.27.3645 Liu, W. Y., Meijer, K., Delbressine, J. M., Willems, P. J., Franssen, F. M., Wouters, E. F., & Spruit, M. A. (2016). Reproducibility and Validity of the 6-Minute Walk Test Using the Gait Real-Time Analysis Interactive Lab in Patients with COPD and Healthy Elderly. PLoS One, 11(9), e0162444. doi:10.1371/journal.pone.0162444 Lugo, L. H., Salinas, F., & Garcia, H. I. (2007). Out-patient rehabilitation programme for spinal cord injured patients: evaluation of the results on motor FIM score. Disabil Rehabil, 29(11-12), 873-881. doi:10.1080/09638280701455494 Lundkvist Josenby, A., Jarnlo, G. B., Gummesson, C., & Nordmark, E. (2009). Longitudinal construct validity of the GMFM-88 total score and goal total score and the GMFM-66 score in a 5-year follow-up study. Phys Ther, 89(4), 342-350. doi:10.2522/ptj.20080037 Lundquist, C. B., & Maribo, T. (2016). The Fugl-Meyer assessment of the upper extremity: reliability, responsiveness and validity of the Danish version. Disabil Rehabil, 1-6. doi:10.3109/09638288.2016.1163422 Mahony, K., Hunt, A., Daley, D., Sims, S., & Adams, R. (2009). Inter-tester reliability and precision of manual muscle testing and hand-held dynamometry in lower limb muscles of children with spina bifida. Phys Occup Ther Pediatr, 29(1), 44-59. doi:10.1080/01942630802574858 Mancini, M. C., Coster, W. J., Amaral, M. F., Avelar, B. S., Freitas, R., & Sampaio, R. F. (2016). New version of the Pediatric Evaluation of Disability Inventory (PEDI-CAT): translation, cultural adaptation to Brazil and analyses of psychometric properties. Braz J Phys Ther. doi:10.1590/bjpt-rbf.2014.0166 Maruo, T., Nakae, A., Maeda, L., Shi, K., Takahashi, K., Morris, S., . . . Saitoh, Y. (2014). Validity, reliability, and assessment sensitivity of the Japanese version of the short-form McGill pain questionnaire 2 in Japanese patients with neuropathic and non-neuropathic pain. Pain Med, 15(11), 1930-1937. doi:10.1111/pme.12468 Miro, J., Castarlenas, E., de la Vega, R., Sole, E., Tome-Pires, C., Jensen, M. P., . . . Racine, M. (2016). Validity of three rating scales for measuring pain intensity in youths with physical disabilities. Eur J Pain, 20(1), 130-137. doi:10.1002/ejp.704 Molina, G. T., Montano, E. R., Gonzalez, A. E., Sepulveda, P. R., Hidalgo-Rasmussen, C., Martinez, N. V., . . . George, L. M. (2014). [Psychometric properties of the quality of life questionnaire health related KIDSCREEN-27 in Chilean adolescents]. Rev Med Chil, 142(11), 1415-1421. doi:10.4067/s0034-98872014001100008 Munnings, A., Chisnall, B., Oji, S., Whittaker, M., & Kanegaonkar, R. (2015). Environmental factors that affect the Fukuda stepping test in normal participants. J Laryngol Otol, 129(5), 450-453. doi:10.1017/s0022215115000560 Mutlu, A., Livanelioglu, A., & Gunel, M. K. (2007). Reliability of goniometric measurements in children with spastic cerebral palsy. Med Sci Monit, 13(7), Cr323-329. Muñoz-Caicedo, A., Zapata-Ossa, H. J., & Pérez-Tenorio, L. M. (2013). Validación de criterio de la Escala Abreviada del Desarrollo (EAD-1) en el dominio audición-lenguaje. Rev. salud pública, 15(3), 386-397. Mylius, C. F., Paap, D., & Takken, T. (2016). Reference value for the 6-minute walk test in children and adolescents: a systematic review. Expert Rev Respir Med, 10(12), 1335-1352. doi:10.1080/17476348.2016.1258305 Naghdi, S., Ebrahimi, I., Asgari, A., Olyaei, G. R., Kazemnejad, A., Mansouri, K., & Ansari, N. N. (2007). A preliminary study into the criterion validity of the Modified Modified Ashworth Scale using the new measure of the alpha motoneuron excitability in spastic hemiplegia. Electromyogr Clin Neurophysiol, 47(3), 187-192. Nasreddine, L., Naja, F., Hills, A. P., Youssef, S. K., Chahine, J., & Hwalla, N. (2012). Validity of predictive equations developed to estimate body fat from anthropometry and bioelectrical impedance analysis in 8-10 year-old children. Clin Nutr, 31(3), 364-371. doi:10.1016/j.clnu.2011.11.008 Nezu, S., Iwasaka, H., Saeki, K., Obayashi, K., Ishizuka, R., Goma, H., . . . Kurumatani, N. (2016). Reliability and validity of Japanese versions of KIDSCREEN-27 and KIDSCREEN-10 questionnaires. Environ Health Prev Med, 21(3), 154-163. doi:10.1007/s12199-016-0510-x Ngamkham, S., Vincent, C., Finnegan, L., Holden, J. E., Wang, Z. J., & Wilkie, D. J. (2012). The McGill Pain Questionnaire as a multidimensional measure in people with cancer: an integrative review. Pain Manag Nurs, 13(1), 27-51. doi:10.1016/j.pmn.2010.12.003 Nunes, M. F., Hukuda, M. E., Favero, F. M., Oliveira, A. B., Voos, M. C., & Caromano, F. A. (2016). Relationship between muscle strength and motor function in Duchenne muscular dystrophy. Arq Neuropsiquiatr, 74(7), 530-535. doi:10.1590/0004-282x20160085 O'Hoski, S., Sibley, K. M., Brooks, D., & Beauchamp, M. K. (2015). Construct validity of the BESTest, mini-BESTest and briefBESTest in adults aged 50 years and older. Gait Posture, 42(3), 301-305. doi:10.1016/j.gaitpost.2015.06.006 Ohura, T., Higashi, T., Ishizaki, T., & Nakayama, T. (2014). Assessment of the validity and internal consistency of a performance evaluation tool based on the Japanese version of the modified barthel index for elderly people living at home. J Phys Ther Sci, 26(12), 1971-1974. doi:10.1589/jpts.26.1971 Oveisgharan, S., Shirani, S., Ghorbani, A., Soltanzade, A., Baghaei, A., Hosseini, S., & Sarrafzadegan, N. (2006). Barthel index in a Middle-East country: translation, validity and reliability. Cerebrovasc Dis, 22(5-6), 350-354. doi:10.1159/000094850 Owen, J., Stephens, D., & Wright, J. G. (2007). Reliability of hip range of motion using goniometry in pediatric femur shaft fractures. Can J Surg, 50(4), 251-255. Page, S. J., Levine, P., & Hade, E. (2012). Psychometric properties and administration of the wrist/hand subscales of the Fugl-Meyer Assessment in minimally impaired upper extremity hemiparesis in stroke. Arch Phys Med Rehabil, 93(12), 2373-2376.e2375. doi:10.1016/j.apmr.2012.06.017 Pandyan, A. D., Price, C. I., Barnes, M. P., & Johnson, G. R. (2003). A biomechanical investigation into the validity of the modified Ashworth Scale as a measure of elbow spasticity. Clin Rehabil, 17(3), 290-293. Panella, L., Tinelli, C., Buizza, A., Lombardi, R., & Gandolfi, R. (2008). Towards objective evaluation of balance in the elderly: validity and reliability of a measurement instrument applied to the Tinetti test. Int J Rehabil Res, 31(1), 65-72. doi:10.1097/MRR.0b013e3282f28f38 Park, S. H., Lee, Y. S., & Kwon, Y. M. (2016). Predictive Validity of Pressure Ulcer Risk Assessment Tools for Elderly: A Meta-Analysis. West J Nurs Res, 38(4), 459-483. doi:10.1177/0193945915602259 Paternostro-Sluga, T., Grim-Stieger, M., Posch, M., Schuhfried, O., Vacariu, G., Mittermaier, C., . . . Fialka-Moser, V. (2008). Reliability and validity of the Medical Research Council (MRC) scale and a modified scale for testing muscle strength in patients with radial palsy. J Rehabil Med, 40(8), 665-671. doi:10.2340/16501977-0235 Peters, D. M., Fritz, S. L., & Krotish, D. E. (2013). Assessing the reliability and validity of a shorter walk test compared with the 10-Meter Walk Test for measurements of gait speed in healthy, older adults. J Geriatr Phys Ther, 36(1), 24-30. doi:10.1519/JPT.0b013e318248e20d Pineda, C. A., Garcia-Perdomo, H. A., Tehelen, J. P., Ruiz, O., & Yandi, J. A. (2014). Formación en semiología médica: una caracterización desde la práctica. Educación y Educadores, 17(1). Quiroz, E. C., Beltrán, Y. H., Durán, E. P., & Quiñones, A. G. (2015). Validación de un modelo de evaluación de las competencias profesionales en Fisioterapia. EDUCACION Y HUMANISMO, 14(23). Rajendran, V., Roy, F. G., & Jeevanantham, D. (2012). Reliability of pediatric reach test in children with hearing impairment. Int J Pediatr Otorhinolaryngol, 76(6), 901-905. doi:10.1016/j.ijporl.2012.02.068 Sacristán, J. (2013). Medicina basada en la evidencia y medicina centrada en el paciente: algunas reflexiones sobre su integración. Revista Clínica Española, 213(9), 460-464. Saso, A., Moe-Nilssen, R., Gunnes, M., & Askim, T. (2016). Responsiveness of the Berg Balance Scale in patients early after stroke. Physiother Theory Pract, 32(4), 251-261. doi:10.3109/09593985.2016.1138347 Schulze, C., Kottorp, A., Meichtry, A., Lilja, M., & Page, J. (2014). Inter-Rater and Test-Retest Reliability of the German Pediatric Evaluation of Disability Inventory (PEDI-G). Phys Occup Ther Pediatr. doi:10.3109/01942638.2014.975311 Schwabova, J., Maly, T., Laczo, J., Zumrova, A., Komarek, V., Musova, Z., & Zahalka, F. (2014). Application of a Scale for the Assessment and Rating of Ataxia (SARA) in Friedreich's ataxia patients according to posturography is limited. J Neurol Sci, 341(1-2), 64-67. doi:10.1016/j.jns.2014.04.001 Scivoletto, G., Tamburella, F., Laurenza, L., Foti, C., Ditunno, J. F., & Molinari, M. (2011). Validity and reliability of the 10-m walk test and the 6-min walk test in spinal cord injury patients. Spinal Cord, 49(6), 736-740. doi:10.1038/sc.2010.180 Serra Valdés, M. Á., & Viera García, M. (2014). Consideraciones sobre la enseñanza de la Semiología, la Propedéutica y el proceso diagnóstico en la práctica clínica. Educación Médica Superior, 28(1), 163-174. Sessler, C. N., Gosnell, M. S., Grap, M. J., Brophy, G. M., O'Neal, P. V., Keane, K. A., . . . Elswick, R. K. (2002). The Richmond Agitation-Sedation Scale: validity and reliability in adult intensive care unit patients. Am J Respir Crit Care Med, 166(10), 1338-1344. doi:10.1164/rccm.2107138 Shannon, S., Breslin, G., Fitzpatrick, B., Hanna, D., & Brennan, D. (2016). Testing the psychometric properties of Kidscreen-27 with Irish children of low socio-economic status. Qual Life Res. doi:10.1007/s11136-016-1432-1 Silva, D. R., Ribeiro, A. S., Pavao, F. H., Ronque, E. R., Avelar, A., Silva, A. M., & Cyrino, E. S. (2013). Validity of the methods to assess body fat in children and adolescents using multi-compartment models as the reference method: a systematic review. Rev Assoc Med Bras (1992), 59(5), 475-486. doi:10.1016/j.ramb.2013.03.006 Snyder, P., Eason, J. M., Philibert, D., Ridgway, A., & McCaughey, T. (2008). Concurrent validity and reliability of the Alberta Infant Motor Scale in infants at dual risk for motor delays. Phys Occup Ther Pediatr, 28(3), 267-282. Stasevic, K., Stasevic, M., Jankovic, S., Djukic, D., Dutina, A., & Grbic, I. (2016). The validation and inter-rater reliability of the Serbian translation of the Richmond agitation and sedation scale in post anesthesia care unit patients. Hippokratia, 20(1), 50-54. Talma, H., Chinapaw, M. J., Bakker, B., HiraSing, R. A., Terwee, C. B., & Altenburg, T. M. (2013). Bioelectrical impedance analysis to estimate body composition in children and adolescents: a systematic review and evidence appraisal of validity, responsiveness, reliability and measurement error. Obes Rev, 14(11), 895-905. doi:10.1111/obr.12061 Tan, J. L., Thomas, N. M., & Johnston, L. M. (2016). Reproducibility of Muscle Strength Testing for Children with Spina Bifida. Phys Occup Ther Pediatr, 1-12. doi:10.1080/01942638.2016.1244872 Tan, S., Niu, H. X., Zhao, L., Gao, Y., Lu, J. M., Shi, C. H., . . . Xu, Y. M. (2013). Reliability and validity of the Chinese version of the Scale for Assessment and Rating of Ataxia. Chin Med J (Engl), 126(11), 2045-2048. Terada, I., & Hyde, C. (2002). The SF-36: an instrument for measuring quality of life in ESRD patients. Edtna erca j, 28(2), 73-76, 83. Tomlinson, D., von Baeyer, C. L., Stinson, J. N., & Sung, L. (2010). A systematic review of faces scales for the self-report of pain intensity in children. Pediatrics, 126(5), e1168-1198. doi:10.1542/peds.2010-1609 Tsang, C. S., Liao, L. R., Chung, R. C., & Pang, M. Y. (2013). Psychometric properties of the Mini-Balance Evaluation Systems Test (Mini-BESTest) in community-dwelling individuals with chronic stroke. Phys Ther, 93(8), 1102-1115. doi:10.2522/ptj.20120454 Turner-Stokes, L., & Siegert, R. J. (2013). A comprehensive psychometric evaluation of the UK FIM + FAM. Disabil Rehabil, 35(22), 1885-1895. doi:10.3109/09638288.2013.766271 Uchmanowicz, I., Jankowska-Polanska, B., Wleklik, M., Rosinczuk-Tonderys, J., & Debska, G. (2014). Health-related quality of life of patients with cystic fibrosis assessed by the SF-36 questionnaire. Pneumonol Alergol Pol, 82(1), 10-17. doi:10.5603/PiAP.2014.0003 Valentini, N. C., & Saccani, R. (2012). Brazilian validation of the Alberta Infant Motor Scale. Phys Ther, 92(3), 440-447. doi:10.2522/ptj.20110036 van der Ploeg, G. E., Gunn, S. M., Withers, R. T., & Modra, A. C. (2003). Use of anthropometric variables to predict relative body fat determined by a four-compartment body composition model. Eur J Clin Nutr, 57(8), 1009-1016. doi:10.1038/sj.ejcn.1601636 Velez, C. M., Lugo-Agudelo, L. H., Hernandez-Herrera, G. N., & Garcia-Garcia, H. I. (2016). Colombian Rasch validation of KIDSCREEN-27 quality of life questionnaire. Health Qual Life Outcomes, 14, 67. doi:10.1186/s12955-016-0472-0 Wafai, L., Zayegh, A., Woulfe, J., Aziz, S. M., & Begg, R. (2015). Identification of Foot Pathologies Based on Plantar Pressure Asymmetry. In P. Kyriacou (Ed.), Sensors (Basel) (Vol. 15, pp. 20392-20408). Wang, J., Thornton, J. C., Kolesnik, S., & Pierson, R. N., Jr. (2000). Anthropometry in body composition. An overview. Ann N Y Acad Sci, 904, 317-326. Willock, J., Baharestani, M. M., & Anthony, D. (2009). The development of the Glamorgan paediatric pressure ulcer risk assessment scale. J Wound Care, 18(1), 17-21. doi:10.12968/jowc.2009.18.1.32135 Wilson, N. C., Mackey, A. H., & Stott, N. S. (2014). How does the functional mobility scale relate to capacity-based measures of walking ability in children and youth with cerebral palsy? Phys Occup Ther Pediatr, 34(2), 185-196. doi:10.3109/01942638.2013.791917 Xu, D., Wang, H., Chen, S., Ross, S., Liu, H., Olivencia-Yurvati, A., . . . Shi, X. (2016). Aerobic Exercise Training Improves Orthostatic Tolerance in Aging Humans. Med Sci Sports Exerc. doi:10.1249/mss.0000000000001153 Yam, W. K., & Leung, M. S. (2006). Interrater reliability of Modified Ashworth Scale and Modified Tardieu Scale in children with spastic cerebral palsy. J Child Neurol, 21(12), 1031-1035. Zhang, Y. B., & Wang, W. Q. (2011). Reliability of the Fukuda stepping test to determine the side of vestibular dysfunction. J Int Med Res, 39(4), 1432-1437. Ziviani, J., Ottenbacher, K. J., Shephard, K., Foreman, S., Astbury, W., & Ireland, P. (2001). Concurrent validity of the Functional Independence Measure for Children (WeeFIM) and the Pediatric Evaluation of Disabilities Inventory in children with developmental disabilities and acquired brain injuries. Phys Occup Ther Pediatr, 21(2-3), 91-101. https://revmovimientocientifico.ibero.edu.co/article/download/mct.12202/pdf info:eu-repo/semantics/article http://purl.org/coar/resource_type/c_6501 http://purl.org/redcol/resource_type/ARTREF info:eu-repo/semantics/publishedVersion http://purl.org/coar/version/c_970fb48d4fbd8a85 info:eu-repo/semantics/openAccess http://purl.org/coar/access_right/c_abf2 Text Publication |
institution |
CORPORACIÓN UNIVERSITARIA IBEROAMERICANA |
thumbnail |
https://nuevo.metarevistas.org/CORPORACIONUNIVERSITARIAIBEROAMERICANA/logo.png |
country_str |
Colombia |
collection |
Movimiento Científico |
title |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica |
spellingShingle |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica Alfonso Mantilla, Jose Ivan |
title_short |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica |
title_full |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica |
title_fullStr |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica |
title_full_unstemmed |
Instrumentos de Evaluación Fisioterapéutica en Población Adulta y Pediátrica Utilizadas en la Práctica Clínica |
title_sort |
instrumentos de evaluación fisioterapéutica en población adulta y pediátrica utilizadas en la práctica clínica |
title_eng |
Instruments for Physiotherapy Evaluation in the Adult and Pediatric Population Used in Clinical Practice |
description |
Introducción  La fisioterapia como área de estudio del movimiento corporal humano, se ha enfatizado en ofrecer herramientas de recuperación a pacientes con diversos tipos de patología a nivel osteomuscular, cardiovascular y neuromuscular. Los procesos de evaluación en fisioterapia son importantes para la identificación de alteraciones estructurales y funcionales en el movimiento corporal humano, en la actualidad existen diversos instrumentos de evaluación con altos niveles de confiabilidad que permiten identificar alteraciones funcionales en los pacientes. Objetivo realizar una revisión de la literatura sobre pruebas clínicas utilizadas para la evaluación del movimiento corporal humano en población adulta y pediátrica en la práctica clínica categorizada por las categorías de la APTA. Método revisión sistemática de la literatura donde se tuvieron en cuenta estudios contemplados del año 2000 al 2016, literatura que contemplara los siguientes términos DeCS: Evaluation, Physical Therapy, pediatrics, adult. Resultados se pudo identificar que entre población adulta y pediátrica existen diferencias en las escalas de medición utilizadas para la evaluación del movimiento corporal humano, las escalas pueden ser categorizadas a través de las categorías de la APTA como características antropométricas, capacidad aeróbica y resistencia, integridad integumentaria, dolor, conciencia atención y cognición, integridad refleja, función motora, desarrollo neuromotor e integridad sensorial, rango de movimiento y flexibilidad, desempeño muscular, marcha y locomoción, balance, autocuidado y manejo en el hogar. Conclusión se pudieron identificar pruebas clínicas con altos niveles de validez y confiabilidad que permiten determinar alteraciones del movimiento corporal humano en adultos y niños, estas pruebas pueden ser categorizadas a través de las categorías de la APTA.
|
description_eng |
Introduction Physiotherapy as an area of study of human body movement, has been emphasized in offering  recovery and rehabilitation tools to patients with various types of pathologies at the musculoskeletal,  cardiovascular, neuromuscular and cognitive levels. The physiotherapeutic evaluation processes are essential for the identification of alterations in human body movement. Currently, there are several assessment instruments with high levels of reliability that allow identifying functional alterations in patients in order to improve rehabilitation processes.Objetive A review of the literature on clinical tests used for the evaluation of human body movement in the adult and pediatric population in clinical practice classified according to the APTA categories. Method Literature review where the studies considered from 2000 to 2018 were taken into account, literature that includes the following DeCS terms: evaluation, physical therapy, pediatrics, adults, validity, and reliability. Results can be  identified in the adult and pediatric population there are differences in the scales of performances that are used for
the evaluation of human body movement, the scales that are classified in the APTA categories as anthropometric characteristics, aerobic capacity and resistance, integrity integumentary, pain, muscle awareness, motor function, neuromotor development and sensory integrity, range of motion, muscle performance, walking and locomotion, balance, self-care and home management. Conclusion We will identify clinical tests with high levels of validity and reliability that will allow alterations of human body movement in adults and children.
|
author |
Alfonso Mantilla, Jose Ivan |
author_facet |
Alfonso Mantilla, Jose Ivan |
citationvolume |
12 |
citationissue |
2 |
publisher |
Bogotá: Corporación Universitaria Iberoamericana |
ispartofjournal |
Movimiento científico |
source |
https://revmovimientocientifico.ibero.edu.co/article/view/mct.12202 |
language |
spa |
format |
Article |
rights |
https://creativecommons.org/licenses/by-nc-sa/4.0/ info:eu-repo/semantics/openAccess http://purl.org/coar/access_right/c_abf2 |
references |
Adelmanesh, F., Jalali, A., Attarian, H., Farahani, B., Ketabchi, S. M., Arvantaj, A., & Raissi, G. R. (2012). Reliability, validity, and sensitivity measures of expanded and revised version of the short-form McGill Pain Questionnaire (SF-MPQ-2) in Iranian patients with neuropathic and non-neuropathic pain. Pain Med, 13(12), 1631-1636. doi:10.1111/j.1526-4637.2012.01517.x Agrawal, Y., Carey, J. P., Hoffman, H. J., Sklare, D. A., & Schubert, M. C. (2011). The modified Romberg Balance Test: normative data in U.S. adults. Otol Neurotol, 32(8), 1309-1311. doi:10.1097/MAO.0b013e31822e5bee Alhusaini, A. A., Dean, C. M., Crosbie, J., Shepherd, R. B., & Lewis, J. (2010). Evaluation of spasticity in children with cerebral palsy using Ashworth and Tardieu Scales compared with laboratory measures. J Child Neurol, 25(10), 1242-1247. doi:10.1177/0883073810362266 Allington, N. J., Leroy, N., & Doneux, C. (2002). Ankle joint range of motion measurements in spastic cerebral palsy children: intraobserver and interobserver reliability and reproducibility of goniometry and visual estimation. J Pediatr Orthop B, 11(3), 236-239. Almeida, K. M., Dutra, M. V., Mello, R. R., Reis, A. B., & Martins, P. S. (2008). Concurrent validity and reliability of the Alberta Infant Motor Scale in premature infants. J Pediatr (Rio J), 84(5), 442-448. doi:doi:10.2223/JPED.1836 Alotaibi, M., Long, T., Kennedy, E., & Bavishi, S. (2014). The efficacy of GMFM-88 and GMFM-66 to detect changes in gross motor function in children with cerebral palsy (CP): a literature review. Disabil Rehabil, 36(8), 617-627. doi:10.3109/09638288.2013.805820 Amatachaya, S., Naewla, S., Srisim, K., Arrayawichanon, P., & Siritaratiwat, W. (2014). Concurrent validity of the 10-meter walk test as compared with the 6-minute walk test in patients with spinal cord injury at various levels of ability. Spinal Cord, 52(4), 333-336. doi:10.1038/sc.2013.171 Anthony, D., Willock, J., & Baharestani, M. (2010). A comparison of Braden Q, Garvin and Glamorgan risk assessment scales in paediatrics. J Tissue Viability, 19(3), 98-105. doi:10.1016/j.jtv.2010.03.001 Atiaja Bonifas, A. R. (2013). Implementación de un sistema de evaluación fisioterapéutica en el tratamiento de rehabilitación física de pacientes con patologías traumatológicas que acuden al área de rehabilitación física del club de leones de la ciudad de ambato en el período marzo–agosto 2012. Bartlett, D., & Birmingham, T. (2003). Validity and reliability of a pediatric reach test. Pediatr Phys Ther, 15(2), 84-92. doi:10.1097/01.pep.0000067885.63909.5c Beers, S. R., Wisniewski, S. R., Garcia-Filion, P., Tian, Y., Hahner, T., Berger, R. P., . . . Adelson, P. D. (2012). Validity of a pediatric version of the Glasgow Outcome Scale-Extended. J Neurotrauma, 29(6), 1126-1139. doi:10.1089/neu.2011.2272 Bellet, R. N., Adams, L., & Morris, N. R. (2012). The 6-minute walk test in outpatient cardiac rehabilitation: validity, reliability and responsiveness--a systematic review. Physiotherapy, 98(4), 277-286. doi:10.1016/j.physio.2011.11.003 Benka Wallen, M., Sorjonen, K., Lofgren, N., & Franzen, E. (2016). Structural Validity of the Mini-Balance Evaluation Systems Test (Mini-BESTest) in People With Mild to Moderate Parkinson Disease. Phys Ther, 96(11), 1799-1806. doi:10.2522/ptj.20150334 Bensoussan, A., Chang, S. W., Menzies, R. G., & Talley, N. J. (2001). Application of the general health status questionnaire SF36 to patients with gastrointestinal dysfunction: initial validation and validation as a measure of change. Aust N Z J Public Health, 25(1), 71-77. Berg, M. M., Dolva, A. S., Kleiven, J., & Krumlinde-Sundholm, L. (2016). Normative Scores for the Pediatric Evaluation of Disability Inventory in Norway. Phys Occup Ther Pediatr, 36(2), 131-143. doi:10.3109/01942638.2015.1050149 Bezerra da Silva Junior, G., De Francesco Daher, E., Fontenele Menezes, A. P., Torres Araújo, M. N., Goretti Frota Ribeiro, M., & Carneiro Câmara, L. M. (2013). Aplicación del examen objetivo clínico estructurado en la evaluación de la Semiología cardiopulmonar. Educación Médica Superior, 27(3), 247-254. Birbeck, G. L., Wiysonge, C. S., Mills, E. J., Frenk, J. J., Zhou, X. N., & Jha, P. (2013). Global health: the importance of evidence-based medicine. BMC Med, 11, 223. doi:10.1186/1741-7015-11-226 Blonna, D., Zarkadas, P. C., Fitzsimmons, J. S., & O'Driscoll, S. W. (2012a). Accuracy and inter-observer reliability of visual estimation compared to clinical goniometry of the elbow. Knee Surg Sports Traumatol Arthrosc, 20(7), 1378-1385. doi:10.1007/s00167-011-1720-9 Blonna, D., Zarkadas, P. C., Fitzsimmons, J. S., & O'Driscoll, S. W. (2012b). Validation of a photography-based goniometry method for measuring joint range of motion. J Shoulder Elbow Surg, 21(1), 29-35. doi:10.1016/j.jse.2011.06.018 Bradley Eilertsen, M. E., Jozefiak, T., Rannestad, T., Indredavik, M. S., & Vik, T. (2012). Quality of life in children and adolescents surviving cancer. Eur J Oncol Nurs, 16(2), 185-193. doi:10.1016/j.ejon.2011.08.001 Braga-Neto, P., Godeiro-Junior, C., Dutra, L. A., Pedroso, J. L., & Barsottini, O. G. (2010). Translation and validation into Brazilian version of the Scale of the Assessment and Rating of Ataxia (SARA). Arq Neuropsiquiatr, 68(2), 228-230. Cacau, L. A., Santana-Filho, V. J., Maynard, L. G., Gomes, M. N., Fernandes, M., & Carvalho, V. O. (2016). Reference Values for the Six-Minute Walk Test in Healthy Children and Adolescents: a Systematic Review. Braz J Cardiovasc Surg, 31(5), 381-388. doi:10.5935/1678-9741.20160081 Canbek, J., Fulk, G., Nof, L., & Echternach, J. (2013). Test-retest reliability and construct validity of the tinetti performance-oriented mobility assessment in people with stroke. J Neurol Phys Ther, 37(1), 14-19. doi:10.1097/NPT.0b013e318283ffcc Charpak, N., de la Hoz, A. M., Villegas, J., & Gil, F. (2016). Discriminant ability of the Infant Neurological International Battery (INFANIB) as a screening tool for the neurological follow-up of high-risk infants in Colombia. Acta Paediatr, 105(5), e195-199. doi:10.1111/apa.13377 Colaris, J., van der Linden, M., Selles, R., Coene, N., Allema, J. H., & Verhaar, J. (2010). Pronation and supination after forearm fractures in children: Reliability of visual estimation and conventional goniometry measurement. Injury, 41(6), 643-646. doi:10.1016/j.injury.2010.02.007 Compagnone, E., Maniglio, J., Camposeo, S., Vespino, T., Losito, L., De Rinaldis, M., . . . Trabacca, A. (2014). Functional classifications for cerebral palsy: correlations between the gross motor function classification system (GMFCS), the manual ability classification system (MACS) and the communication function classification system (CFCS). Res Dev Disabil, 35(11), 2651-2657. doi:10.1016/j.ridd.2014.07.005 Condron, J. E., & Hill, K. D. (2002). Reliability and validity of a dual-task force platform assessment of balance performance: effect of age, balance impairment, and cognitive task. J Am Geriatr Soc, 50(1), 157-162. Curley, M. A., Razmus, I. S., Roberts, K. E., & Wypij, D. (2003). Predicting pressure ulcer risk in pediatric patients: the Braden Q Scale. Nurs Res, 52(1), 22-33. Darr, N., Franjoine, M. R., Campbell, S. K., & Smith, E. (2015). Psychometric Properties of the Pediatric Balance Scale Using Rasch Analysis. Pediatr Phys Ther, 27(4), 337-348. doi:10.1097/pep.0000000000000178 de Albuquerque, P. L., Lemos, A., Guerra, M. Q., & Eickmann, S. H. (2015). Accuracy of the Alberta Infant Motor Scale (AIMS) to detect developmental delay of gross motor skills in preterm infants: a systematic review. Dev Neurorehabil, 18(1), 15-21. doi:10.3109/17518423.2014.955213 de Kraker, M., Selles, R. W., Molenaar, T. M., Schreuders, T. A., Hovius, S. E., & Stam, H. J. (2009). Palmar abduction measurements: reliability and introduction of normative data in healthy children. J Hand Surg Am, 34(9), 1704-1708. doi:10.1016/j.jhsa.2009.06.011 de Lima, E. L., de Brito, M. J., de Souza, D. M., Salome, G. M., & Ferreira, L. M. (2016). Cross-cultural adaptation and validation of the neonatal/infant Braden Q risk assessment scale. J Tissue Viability, 25(1), 57-65. doi:10.1016/j.jtv.2015.12.004 Defrasne Ait-Said, E., Groslambert, A., & Courty, D. (2007). Validation of a pictorial rating scale for grip strength evaluation in 3- to 6-year-old children. Neurosci Lett, 420(2), 150-154. doi:10.1016/j.neulet.2007.04.066 Demerath, E. W., & Fields, D. A. (2014). Body composition assessment in the infant. Am J Hum Biol, 26(3), 291-304. doi:10.1002/ajhb.22500 Deschamps, K., Staes, F., Desmet, D., Roosen, P., Matricali, G. A., Keijsers, N., . . . Bruyninckx, H. (2015). A color-code based method for the interpretation of plantar pressure measurements in clinical gait analysis. Gait Posture, 41(3), 852-856. doi:10.1016/j.gaitpost.2014.12.013 Deschamps, K., Staes, F., Desmet, D., Roosen, P., Matricali, G. A., Keijsers, N., . . . Bruyninckx, H. (2016). A Novel Method of Quantifying Gait Deviations Using Plantar Pressure Patterns. J Am Podiatr Med Assoc, 106(4), 299-304. doi:10.7547/14-140 Dumas, H. M., Fragala-Pinkham, M. A., Rosen, E. L., Lombard, K. A., & Farrell, C. (2015). Pediatric Evaluation of Disability Inventory Computer Adaptive Test (PEDI-CAT) and Alberta Infant Motor Scale (AIMS): Validity and Responsiveness. Phys Ther, 95(11), 1559-1568. doi:10.2522/ptj.20140339 Dutton, M. (2012). McGraw-Hills NPTE National Physical Therapy Exam, Second Edition: McGraw-Hill Education. Eisenmann, J. C., Heelan, K. A., & Welk, G. J. (2004). Assessing body composition among 3- to 8-year-old children: anthropometry, BIA, and DXA. Obes Res, 12(10), 1633-1640. doi:10.1038/oby.2004.203 Eliasson, A. C., Krumlinde-Sundholm, L., Rosblad, B., Beckung, E., Arner, M., Ohrvall, A. M., & Rosenbaum, P. (2006). The Manual Ability Classification System (MACS) for children with cerebral palsy: scale development and evidence of validity and reliability. Dev Med Child Neurol, 48(7), 549-554. doi:10.1017/s0012162206001162 Ely, E. W., Truman, B., Shintani, A., Thomason, J. W., Wheeler, A. P., Gordon, S., . . . Bernard, G. R. (2003). Monitoring sedation status over time in ICU patients: reliability and validity of the Richmond Agitation-Sedation Scale (RASS). Jama, 289(22), 2983-2991. doi:10.1001/jama.289.22.2983 Erceg, D. N., Dieli-Conwright, C. M., Rossuello, A. E., Jensky, N. E., Sun, S., & Schroeder, E. T. (2010). The Stayhealthy bioelectrical impedance analyzer predicts body fat in children and adults. Nutr Res, 30(5), 297-304. doi:10.1016/j.nutres.2010.04.009 Garra, G., Singer, A. J., Domingo, A., & Thode, H. C., Jr. (2013). The Wong-Baker pain FACES scale measures pain, not fear. Pediatr Emerg Care, 29(1), 17-20. doi:10.1097/PEC.0b013e31827b2299 Garra, G., Singer, A. J., Taira, B. R., Chohan, J., Cardoz, H., Chisena, E., & Thode, H. C., Jr. (2010). Validation of the Wong-Baker FACES Pain Rating Scale in pediatric emergency department patients. Acad Emerg Med, 17(1), 50-54. doi:10.1111/j.1553-2712.2009.00620.x Gautschi, O. P., Smoll, N. R., Corniola, M. V., Joswig, H., Chau, I., Hildebrandt, G., . . . Stienen, M. N. (2016). Validity and Reliability of a Measurement of Objective Functional Impairment in Lumbar Degenerative Disc Disease: The Timed Up and Go (TUG) Test. Neurosurgery, 79(2), 270-278. doi:10.1227/neu.0000000000001195 Graham, H. K., Harvey, A., Rodda, J., Nattrass, G. R., & Pirpiris, M. (2004). The Functional Mobility Scale (FMS). J Pediatr Orthop, 24(5), 514-520. Grilli, L., Feldman, D. E., Majnemer, A., Couture, M., Azoulay, L., & Swaine, B. (2006). Associations between a functional independence measure (WeeFIM) and the pediatric quality of life inventory (PedsQL4.0) in young children with physical disabilities. Qual Life Res, 15(6), 1023-1031. doi:10.1007/s11136-006-0041-9 Groth, G. N., VanDeven, K. M., Phillips, E. C., & Ehretsman, R. L. (2001). Goniometry of the proximal and distal interphalangeal joints, Part II: placement prefereces, interrater reliability, and concurrent validity. J Hand Ther, 14(1), 23-29. Halek, M., & Mayer, H. (2002). [Predictive validity of the original and expanded Norton Scale in geriatric nursing]. Pflege, 15(6), 309-317. doi:10.1024/1012-5302.15.6.309 Harris, S. R., Backman, C. L., & Mayson, T. A. (2010). Comparative predictive validity of the Harris Infant Neuromotor Test and the Alberta Infant Motor Scale. Dev Med Child Neurol, 52(5), 462-467. doi:10.1111/j.1469-8749.2009.03518.x Haugh, A. B., Pandyan, A. D., & Johnson, G. R. (2006). A systematic review of the Tardieu Scale for the measurement of spasticity. Disabil Rehabil, 28(15), 899-907. doi:10.1080/09638280500404305 Hawker, G. A., Mian, S., Kendzerska, T., & French, M. (2011). Measures of adult pain: Visual Analog Scale for Pain (VAS Pain), Numeric Rating Scale for Pain (NRS Pain), McGill Pain Questionnaire (MPQ), Short-Form McGill Pain Questionnaire (SF-MPQ), Chronic Pain Grade Scale (CPGS), Short Form-36 Bodily Pain Scale (SF-36 BPS), and Measure of Intermittent and Constant Osteoarthritis Pain (ICOAP). Arthritis Care Res (Hoboken), 63 Suppl 11, S240-252. doi:10.1002/acr.20543 Honaker, J. A., Boismier, T. E., Shepard, N. P., & Shepard, N. T. (2009). Fukuda stepping test: sensitivity and specificity. J Am Acad Audiol, 20(5), 311-314; quiz 335. Hong, S. K., Park, J. H., Kwon, S. Y., Kim, J. S., & Koo, J. W. (2015). Clinical efficacy of the Romberg test using a foam pad to identify balance problems: a comparative study with the sensory organization test. Eur Arch Otorhinolaryngol, 272(10), 2741-2747. doi:10.1007/s00405-014-3273-2 Hormiga, C., Camargo, D., & Orozco, L. (2008). Reproducibilidad y validez convergente de la Escala Abreviada del Desarrollo y una traducción al español del instrumento Neurosensory Motor Development Assessment. Biomédica, 28(3), 327-346. Hwang, R., Morris, N. R., Mandrusiak, A., Mudge, A., Suna, J., Adsett, J., & Russell, T. (2016). Timed Up and Go Test: A Reliable and Valid Test in Patients With Chronic Heart Failure. J Card Fail, 22(8), 646-650. doi:10.1016/j.cardfail.2015.09.018 Isella, V., Mapelli, C., Morielli, N., De Gaspari, D., Siri, C., Pezzoli, G., . . . Appollonio, I. M. (2013). Validity and metric of MiniMental Parkinson and MiniMental State Examination in Parkinson's disease. Neurol Sci, 34(10), 1751-1758. doi:10.1007/s10072-013-1328-6 Jain, M., Smith, M., Cintas, H., Koziol, D., Wesley, R., Harris-Love, M., . . . Hicks, J. (2006). Intra-rater and inter-rater reliability of the 10-point Manual Muscle Test (MMT) of strength in children with juvenile idiopathic inflammatory myopathies (JIIM). Phys Occup Ther Pediatr, 26(3), 5-17. Kallman, U., & Lindgren, M. (2014). Predictive validity of 4 risk assessment scales for prediction of pressure ulcer development in a hospital setting. Adv Skin Wound Care, 27(2), 70-76. doi:10.1097/01.asw.0000439059.72199.41 Kamath, S., & Guyatt, G. (2016). Importance of evidence-based medicine on research and practice. In Indian J Anaesth (Vol. 60, pp. 622-625). India. Kanburoglu, M. K., Ozdemir, F. M., Ozkan, S., & Tunaoglu, F. S. (2014). Reference values of the 6-minute walk test in healthy Turkish children and adolescents between 11 and 18 years of age. Respir Care, 59(9), 1369-1375. doi:10.4187/respcare.02891 Kato, T., Kato, Z., Kuratsubo, I., Ota, T., Orii, T., Kondo, N., & Suzuki, Y. (2007). Evaluation of ADL in patients with Hunter disease using FIM score. Brain Dev, 29(5), 298-305. doi:10.1016/j.braindev.2006.08.015 Kerson, A. G., DeMaria, R., Mauer, E., Joyce, C., Gerber, L. M., Greenwald, B. M., . . . Traube, C. (2016). Validity of the Richmond Agitation-Sedation Scale (RASS) in critically ill children. J Intensive Care, 4, 65. doi:10.1186/s40560-016-0189-5 Kim, B. R., Lee, J. Y., Kim, M. J., Jung, H., & Lee, J. (2014). Korean version of the scale for the assessment and rating of ataxia in ataxic stroke patients. Ann Rehabil Med, 38(6), 742-751. doi:10.5535/arm.2014.38.6.742 Ko, J. (2014). Sensitivity to functional improvements of GMFM-88, GMFM-66, and PEDI mobility scores in young children with cerebral palsy. Percept Mot Skills, 119(1), 305-319. doi:10.2466/03.25.PMS.119c14z1 Ko, J., & Kim, M. (2012). Inter-rater Reliability of the K-GMFM-88 and the GMPM for Children with Cerebral Palsy. Ann Rehabil Med, 36(2), 233-239. doi:10.5535/arm.2012.36.2.233 Kulkarni, B., Mamidi, R. S., Balakrishna, N., & Radhakrishna, K. V. (2014). Body composition assessment in infancy and early childhood: comparison of anthropometry with dual-energy X-ray absorptiometry in low-income group children from India. Eur J Clin Nutr, 68(6), 658-663. doi:10.1038/ejcn.2014.37 Kusztal, M., Nowak, K., Magott-Procelewska, M., Weyde, W., & Penar, J. (2003). [Evaluation of health-related quality of life in dialysis patients. Personal experience using questionnaire SF-36]. Pol Merkur Lekarski, 14(80), 113-117. Lammers, A. E., Hislop, A. A., Flynn, Y., & Haworth, S. G. (2008). The 6-minute walk test: normal values for children of 4-11 years of age. Arch Dis Child, 93(6), 464-468. doi:10.1136/adc.2007.123653 Lee, J. W., Chung, E., & Lee, B. H. (2015). A comparison of functioning, activity, and participation in school-aged children with cerebral palsy using the manual ability classification system. J Phys Ther Sci, 27(1), 243-246. doi:10.1589/jpts.27.243 Lee-Valkov, P. M., Aaron, D. H., Eladoumikdachi, F., Thornby, J., & Netscher, D. T. (2003). Measuring normal hand dexterity values in normal 3-, 4-, and 5-year-old children and their relationship with grip and pinch strength. J Hand Ther, 16(1), 22-28. Lesmes, J. D. (2007). Evaluación clínico-funcional del movimiento corporal humano: Ed. Médica Panamericana. Levin, H. S., Boake, C., Song, J., McCauley, S., Contant, C., Diaz-Marchan, P., . . . Kotrla, K. J. (2001). Validity and sensitivity to change of the extended Glasgow Outcome Scale in mild to moderate traumatic brain injury. J Neurotrauma, 18(6), 575-584. doi:10.1089/089771501750291819 Liao, W., Wen, E. Y., Li, C., Chang, Q., Lv, K. L., Yang, W., . . . Zhao, C. M. (2012). Predicting neurodevelopmental outcomes for at-risk infants: reliability and predictive validity using a Chinese version of the INFANIB at 3, 7 and 10 months. BMC Pediatr, 12, 72. doi:10.1186/1471-2431-12-72 Lim, H. (2015). Correlation between the selective control assessment of lower extremity and pediatric balance scale scores in children with spastic cerebral palsy. J Phys Ther Sci, 27(12), 3645-3649. doi:10.1589/jpts.27.3645 Liu, W. Y., Meijer, K., Delbressine, J. M., Willems, P. J., Franssen, F. M., Wouters, E. F., & Spruit, M. A. (2016). Reproducibility and Validity of the 6-Minute Walk Test Using the Gait Real-Time Analysis Interactive Lab in Patients with COPD and Healthy Elderly. PLoS One, 11(9), e0162444. doi:10.1371/journal.pone.0162444 Lugo, L. H., Salinas, F., & Garcia, H. I. (2007). Out-patient rehabilitation programme for spinal cord injured patients: evaluation of the results on motor FIM score. Disabil Rehabil, 29(11-12), 873-881. doi:10.1080/09638280701455494 Lundkvist Josenby, A., Jarnlo, G. B., Gummesson, C., & Nordmark, E. (2009). Longitudinal construct validity of the GMFM-88 total score and goal total score and the GMFM-66 score in a 5-year follow-up study. Phys Ther, 89(4), 342-350. doi:10.2522/ptj.20080037 Lundquist, C. B., & Maribo, T. (2016). The Fugl-Meyer assessment of the upper extremity: reliability, responsiveness and validity of the Danish version. Disabil Rehabil, 1-6. doi:10.3109/09638288.2016.1163422 Mahony, K., Hunt, A., Daley, D., Sims, S., & Adams, R. (2009). Inter-tester reliability and precision of manual muscle testing and hand-held dynamometry in lower limb muscles of children with spina bifida. Phys Occup Ther Pediatr, 29(1), 44-59. doi:10.1080/01942630802574858 Mancini, M. C., Coster, W. J., Amaral, M. F., Avelar, B. S., Freitas, R., & Sampaio, R. F. (2016). New version of the Pediatric Evaluation of Disability Inventory (PEDI-CAT): translation, cultural adaptation to Brazil and analyses of psychometric properties. Braz J Phys Ther. doi:10.1590/bjpt-rbf.2014.0166 Maruo, T., Nakae, A., Maeda, L., Shi, K., Takahashi, K., Morris, S., . . . Saitoh, Y. (2014). Validity, reliability, and assessment sensitivity of the Japanese version of the short-form McGill pain questionnaire 2 in Japanese patients with neuropathic and non-neuropathic pain. Pain Med, 15(11), 1930-1937. doi:10.1111/pme.12468 Miro, J., Castarlenas, E., de la Vega, R., Sole, E., Tome-Pires, C., Jensen, M. P., . . . Racine, M. (2016). Validity of three rating scales for measuring pain intensity in youths with physical disabilities. Eur J Pain, 20(1), 130-137. doi:10.1002/ejp.704 Molina, G. T., Montano, E. R., Gonzalez, A. E., Sepulveda, P. R., Hidalgo-Rasmussen, C., Martinez, N. V., . . . George, L. M. (2014). [Psychometric properties of the quality of life questionnaire health related KIDSCREEN-27 in Chilean adolescents]. Rev Med Chil, 142(11), 1415-1421. doi:10.4067/s0034-98872014001100008 Munnings, A., Chisnall, B., Oji, S., Whittaker, M., & Kanegaonkar, R. (2015). Environmental factors that affect the Fukuda stepping test in normal participants. J Laryngol Otol, 129(5), 450-453. doi:10.1017/s0022215115000560 Mutlu, A., Livanelioglu, A., & Gunel, M. K. (2007). Reliability of goniometric measurements in children with spastic cerebral palsy. Med Sci Monit, 13(7), Cr323-329. Muñoz-Caicedo, A., Zapata-Ossa, H. J., & Pérez-Tenorio, L. M. (2013). Validación de criterio de la Escala Abreviada del Desarrollo (EAD-1) en el dominio audición-lenguaje. Rev. salud pública, 15(3), 386-397. Mylius, C. F., Paap, D., & Takken, T. (2016). Reference value for the 6-minute walk test in children and adolescents: a systematic review. Expert Rev Respir Med, 10(12), 1335-1352. doi:10.1080/17476348.2016.1258305 Naghdi, S., Ebrahimi, I., Asgari, A., Olyaei, G. R., Kazemnejad, A., Mansouri, K., & Ansari, N. N. (2007). A preliminary study into the criterion validity of the Modified Modified Ashworth Scale using the new measure of the alpha motoneuron excitability in spastic hemiplegia. Electromyogr Clin Neurophysiol, 47(3), 187-192. Nasreddine, L., Naja, F., Hills, A. P., Youssef, S. K., Chahine, J., & Hwalla, N. (2012). Validity of predictive equations developed to estimate body fat from anthropometry and bioelectrical impedance analysis in 8-10 year-old children. Clin Nutr, 31(3), 364-371. doi:10.1016/j.clnu.2011.11.008 Nezu, S., Iwasaka, H., Saeki, K., Obayashi, K., Ishizuka, R., Goma, H., . . . Kurumatani, N. (2016). Reliability and validity of Japanese versions of KIDSCREEN-27 and KIDSCREEN-10 questionnaires. Environ Health Prev Med, 21(3), 154-163. doi:10.1007/s12199-016-0510-x Ngamkham, S., Vincent, C., Finnegan, L., Holden, J. E., Wang, Z. J., & Wilkie, D. J. (2012). The McGill Pain Questionnaire as a multidimensional measure in people with cancer: an integrative review. Pain Manag Nurs, 13(1), 27-51. doi:10.1016/j.pmn.2010.12.003 Nunes, M. F., Hukuda, M. E., Favero, F. M., Oliveira, A. B., Voos, M. C., & Caromano, F. A. (2016). Relationship between muscle strength and motor function in Duchenne muscular dystrophy. Arq Neuropsiquiatr, 74(7), 530-535. doi:10.1590/0004-282x20160085 O'Hoski, S., Sibley, K. M., Brooks, D., & Beauchamp, M. K. (2015). Construct validity of the BESTest, mini-BESTest and briefBESTest in adults aged 50 years and older. Gait Posture, 42(3), 301-305. doi:10.1016/j.gaitpost.2015.06.006 Ohura, T., Higashi, T., Ishizaki, T., & Nakayama, T. (2014). Assessment of the validity and internal consistency of a performance evaluation tool based on the Japanese version of the modified barthel index for elderly people living at home. J Phys Ther Sci, 26(12), 1971-1974. doi:10.1589/jpts.26.1971 Oveisgharan, S., Shirani, S., Ghorbani, A., Soltanzade, A., Baghaei, A., Hosseini, S., & Sarrafzadegan, N. (2006). Barthel index in a Middle-East country: translation, validity and reliability. Cerebrovasc Dis, 22(5-6), 350-354. doi:10.1159/000094850 Owen, J., Stephens, D., & Wright, J. G. (2007). Reliability of hip range of motion using goniometry in pediatric femur shaft fractures. Can J Surg, 50(4), 251-255. Page, S. J., Levine, P., & Hade, E. (2012). Psychometric properties and administration of the wrist/hand subscales of the Fugl-Meyer Assessment in minimally impaired upper extremity hemiparesis in stroke. Arch Phys Med Rehabil, 93(12), 2373-2376.e2375. doi:10.1016/j.apmr.2012.06.017 Pandyan, A. D., Price, C. I., Barnes, M. P., & Johnson, G. R. (2003). A biomechanical investigation into the validity of the modified Ashworth Scale as a measure of elbow spasticity. Clin Rehabil, 17(3), 290-293. Panella, L., Tinelli, C., Buizza, A., Lombardi, R., & Gandolfi, R. (2008). Towards objective evaluation of balance in the elderly: validity and reliability of a measurement instrument applied to the Tinetti test. Int J Rehabil Res, 31(1), 65-72. doi:10.1097/MRR.0b013e3282f28f38 Park, S. H., Lee, Y. S., & Kwon, Y. M. (2016). Predictive Validity of Pressure Ulcer Risk Assessment Tools for Elderly: A Meta-Analysis. West J Nurs Res, 38(4), 459-483. doi:10.1177/0193945915602259 Paternostro-Sluga, T., Grim-Stieger, M., Posch, M., Schuhfried, O., Vacariu, G., Mittermaier, C., . . . Fialka-Moser, V. (2008). Reliability and validity of the Medical Research Council (MRC) scale and a modified scale for testing muscle strength in patients with radial palsy. J Rehabil Med, 40(8), 665-671. doi:10.2340/16501977-0235 Peters, D. M., Fritz, S. L., & Krotish, D. E. (2013). Assessing the reliability and validity of a shorter walk test compared with the 10-Meter Walk Test for measurements of gait speed in healthy, older adults. J Geriatr Phys Ther, 36(1), 24-30. doi:10.1519/JPT.0b013e318248e20d Pineda, C. A., Garcia-Perdomo, H. A., Tehelen, J. P., Ruiz, O., & Yandi, J. A. (2014). Formación en semiología médica: una caracterización desde la práctica. Educación y Educadores, 17(1). Quiroz, E. C., Beltrán, Y. H., Durán, E. P., & Quiñones, A. G. (2015). Validación de un modelo de evaluación de las competencias profesionales en Fisioterapia. EDUCACION Y HUMANISMO, 14(23). Rajendran, V., Roy, F. G., & Jeevanantham, D. (2012). Reliability of pediatric reach test in children with hearing impairment. Int J Pediatr Otorhinolaryngol, 76(6), 901-905. doi:10.1016/j.ijporl.2012.02.068 Sacristán, J. (2013). Medicina basada en la evidencia y medicina centrada en el paciente: algunas reflexiones sobre su integración. Revista Clínica Española, 213(9), 460-464. Saso, A., Moe-Nilssen, R., Gunnes, M., & Askim, T. (2016). Responsiveness of the Berg Balance Scale in patients early after stroke. Physiother Theory Pract, 32(4), 251-261. doi:10.3109/09593985.2016.1138347 Schulze, C., Kottorp, A., Meichtry, A., Lilja, M., & Page, J. (2014). Inter-Rater and Test-Retest Reliability of the German Pediatric Evaluation of Disability Inventory (PEDI-G). Phys Occup Ther Pediatr. doi:10.3109/01942638.2014.975311 Schwabova, J., Maly, T., Laczo, J., Zumrova, A., Komarek, V., Musova, Z., & Zahalka, F. (2014). Application of a Scale for the Assessment and Rating of Ataxia (SARA) in Friedreich's ataxia patients according to posturography is limited. J Neurol Sci, 341(1-2), 64-67. doi:10.1016/j.jns.2014.04.001 Scivoletto, G., Tamburella, F., Laurenza, L., Foti, C., Ditunno, J. F., & Molinari, M. (2011). Validity and reliability of the 10-m walk test and the 6-min walk test in spinal cord injury patients. Spinal Cord, 49(6), 736-740. doi:10.1038/sc.2010.180 Serra Valdés, M. Á., & Viera García, M. (2014). Consideraciones sobre la enseñanza de la Semiología, la Propedéutica y el proceso diagnóstico en la práctica clínica. Educación Médica Superior, 28(1), 163-174. Sessler, C. N., Gosnell, M. S., Grap, M. J., Brophy, G. M., O'Neal, P. V., Keane, K. A., . . . Elswick, R. K. (2002). The Richmond Agitation-Sedation Scale: validity and reliability in adult intensive care unit patients. Am J Respir Crit Care Med, 166(10), 1338-1344. doi:10.1164/rccm.2107138 Shannon, S., Breslin, G., Fitzpatrick, B., Hanna, D., & Brennan, D. (2016). Testing the psychometric properties of Kidscreen-27 with Irish children of low socio-economic status. Qual Life Res. doi:10.1007/s11136-016-1432-1 Silva, D. R., Ribeiro, A. S., Pavao, F. H., Ronque, E. R., Avelar, A., Silva, A. M., & Cyrino, E. S. (2013). Validity of the methods to assess body fat in children and adolescents using multi-compartment models as the reference method: a systematic review. Rev Assoc Med Bras (1992), 59(5), 475-486. doi:10.1016/j.ramb.2013.03.006 Snyder, P., Eason, J. M., Philibert, D., Ridgway, A., & McCaughey, T. (2008). Concurrent validity and reliability of the Alberta Infant Motor Scale in infants at dual risk for motor delays. Phys Occup Ther Pediatr, 28(3), 267-282. Stasevic, K., Stasevic, M., Jankovic, S., Djukic, D., Dutina, A., & Grbic, I. (2016). The validation and inter-rater reliability of the Serbian translation of the Richmond agitation and sedation scale in post anesthesia care unit patients. Hippokratia, 20(1), 50-54. Talma, H., Chinapaw, M. J., Bakker, B., HiraSing, R. A., Terwee, C. B., & Altenburg, T. M. (2013). Bioelectrical impedance analysis to estimate body composition in children and adolescents: a systematic review and evidence appraisal of validity, responsiveness, reliability and measurement error. Obes Rev, 14(11), 895-905. doi:10.1111/obr.12061 Tan, J. L., Thomas, N. M., & Johnston, L. M. (2016). Reproducibility of Muscle Strength Testing for Children with Spina Bifida. Phys Occup Ther Pediatr, 1-12. doi:10.1080/01942638.2016.1244872 Tan, S., Niu, H. X., Zhao, L., Gao, Y., Lu, J. M., Shi, C. H., . . . Xu, Y. M. (2013). Reliability and validity of the Chinese version of the Scale for Assessment and Rating of Ataxia. Chin Med J (Engl), 126(11), 2045-2048. Terada, I., & Hyde, C. (2002). The SF-36: an instrument for measuring quality of life in ESRD patients. Edtna erca j, 28(2), 73-76, 83. Tomlinson, D., von Baeyer, C. L., Stinson, J. N., & Sung, L. (2010). A systematic review of faces scales for the self-report of pain intensity in children. Pediatrics, 126(5), e1168-1198. doi:10.1542/peds.2010-1609 Tsang, C. S., Liao, L. R., Chung, R. C., & Pang, M. Y. (2013). Psychometric properties of the Mini-Balance Evaluation Systems Test (Mini-BESTest) in community-dwelling individuals with chronic stroke. Phys Ther, 93(8), 1102-1115. doi:10.2522/ptj.20120454 Turner-Stokes, L., & Siegert, R. J. (2013). A comprehensive psychometric evaluation of the UK FIM + FAM. Disabil Rehabil, 35(22), 1885-1895. doi:10.3109/09638288.2013.766271 Uchmanowicz, I., Jankowska-Polanska, B., Wleklik, M., Rosinczuk-Tonderys, J., & Debska, G. (2014). Health-related quality of life of patients with cystic fibrosis assessed by the SF-36 questionnaire. Pneumonol Alergol Pol, 82(1), 10-17. doi:10.5603/PiAP.2014.0003 Valentini, N. C., & Saccani, R. (2012). Brazilian validation of the Alberta Infant Motor Scale. Phys Ther, 92(3), 440-447. doi:10.2522/ptj.20110036 van der Ploeg, G. E., Gunn, S. M., Withers, R. T., & Modra, A. C. (2003). Use of anthropometric variables to predict relative body fat determined by a four-compartment body composition model. Eur J Clin Nutr, 57(8), 1009-1016. doi:10.1038/sj.ejcn.1601636 Velez, C. M., Lugo-Agudelo, L. H., Hernandez-Herrera, G. N., & Garcia-Garcia, H. I. (2016). Colombian Rasch validation of KIDSCREEN-27 quality of life questionnaire. Health Qual Life Outcomes, 14, 67. doi:10.1186/s12955-016-0472-0 Wafai, L., Zayegh, A., Woulfe, J., Aziz, S. M., & Begg, R. (2015). Identification of Foot Pathologies Based on Plantar Pressure Asymmetry. In P. Kyriacou (Ed.), Sensors (Basel) (Vol. 15, pp. 20392-20408). Wang, J., Thornton, J. C., Kolesnik, S., & Pierson, R. N., Jr. (2000). Anthropometry in body composition. An overview. Ann N Y Acad Sci, 904, 317-326. Willock, J., Baharestani, M. M., & Anthony, D. (2009). The development of the Glamorgan paediatric pressure ulcer risk assessment scale. J Wound Care, 18(1), 17-21. doi:10.12968/jowc.2009.18.1.32135 Wilson, N. C., Mackey, A. H., & Stott, N. S. (2014). How does the functional mobility scale relate to capacity-based measures of walking ability in children and youth with cerebral palsy? Phys Occup Ther Pediatr, 34(2), 185-196. doi:10.3109/01942638.2013.791917 Xu, D., Wang, H., Chen, S., Ross, S., Liu, H., Olivencia-Yurvati, A., . . . Shi, X. (2016). Aerobic Exercise Training Improves Orthostatic Tolerance in Aging Humans. Med Sci Sports Exerc. doi:10.1249/mss.0000000000001153 Yam, W. K., & Leung, M. S. (2006). Interrater reliability of Modified Ashworth Scale and Modified Tardieu Scale in children with spastic cerebral palsy. J Child Neurol, 21(12), 1031-1035. Zhang, Y. B., & Wang, W. Q. (2011). Reliability of the Fukuda stepping test to determine the side of vestibular dysfunction. J Int Med Res, 39(4), 1432-1437. Ziviani, J., Ottenbacher, K. J., Shephard, K., Foreman, S., Astbury, W., & Ireland, P. (2001). Concurrent validity of the Functional Independence Measure for Children (WeeFIM) and the Pediatric Evaluation of Disabilities Inventory in children with developmental disabilities and acquired brain injuries. Phys Occup Ther Pediatr, 21(2-3), 91-101. |
type_driver |
info:eu-repo/semantics/article |
type_coar |
http://purl.org/coar/resource_type/c_6501 |
type_version |
info:eu-repo/semantics/publishedVersion |
type_coarversion |
http://purl.org/coar/version/c_970fb48d4fbd8a85 |
type_content |
Text |
publishDate |
2019-03-14 |
date_accessioned |
2019-03-14T00:00:00Z |
date_available |
2019-03-14T00:00:00Z |
url |
https://revmovimientocientifico.ibero.edu.co/article/view/mct.12202 |
url_doi |
https://doi.org/10.33881/2011-7191.mct.12202 |
issn |
2011-7191 |
eissn |
2463-2236 |
doi |
10.33881/2011-7191.mct.12202 |
citationstartpage |
13 |
citationendpage |
22 |
url2_str_mv |
https://revmovimientocientifico.ibero.edu.co/article/download/mct.12202/pdf |
_version_ |
1811200050559188992 |